Baumeister W, Fringeli U P, Hahn M, Kopp F, Seredynski J
Biophys J. 1976 Jul;16(7):791-810. doi: 10.1016/S0006-3495(76)85729-3.
Structural deteriorations in biomembranes, as inevitably induced while structural information is gathered by electron optical methods, were evaluated by infrared spectroscopy. Tripalmitin model membranes were irradiated with 100 keV-electrons in an electron microscope. The intensity decay of group vibrations over the dose reveals the sequence of damage in the polar and nonpolar part of the molecule. The C-C backbone, being the most important structural feature, shows a significant latency effect up to 0.6 e-/A2 and is completely disordered by 3 e-/A2, corresponding to about three inelastic processes per molecule.
通过电子光学方法收集结构信息时不可避免地会引发生物膜的结构退化,对此用红外光谱法进行了评估。在电子显微镜中用100 keV电子辐照三棕榈精模型膜。基团振动强度随剂量的衰减揭示了分子极性和非极性部分的损伤顺序。作为最重要结构特征的C-C主链,在剂量达到0.6 e-/A2时表现出显著的延迟效应,在3 e-/A2时完全无序,这相当于每个分子约有三个非弹性过程。